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利用宏基因组学研究揭示污水处理厂预处理和后处理污泥中的微生物相互作用及代谢潜力

Unraveling the Microbial Interactions and Metabolic Potentials in Pre- and Post-treated Sludge from a Wastewater Treatment Plant Using Metagenomic Studies.

作者信息

Sidhu Chandni, Vikram Surendra, Pinnaka Anil Kumar

机构信息

Microbial Type Culture Collection and Gene Bank, Council of Scientific and Industrial Research-Institute of Microbial TechnologyChandigarh, India.

Centre for Microbial Ecology and Genomics, Department of Genetics, University of PretoriaPretoria, South Africa.

出版信息

Front Microbiol. 2017 Jul 19;8:1382. doi: 10.3389/fmicb.2017.01382. eCollection 2017.

Abstract

Sewage waste represents an ecosystem of complex and interactive microbial consortia which proliferate with different kinetics according to their individual genetic as well as metabolic potential. We performed metagenomic shotgun sequencing on Ion-Torrent platform, to explore the microbial community structure, their biological interactions and associated functional capacity of pre-treated/raw sludge (RS) and post-treated/dried sludge (DS) of wastewater treatment plant. Bacterial phylotypes belonging to (∼45.80%) dominated the RS with relatively few Archaea (∼1.94%) whereas DS has the dominance of - (30.23%) and - (13.38%) classes of with relatively greater abundance of (∼7.18%). In particular, appears as a primary energy source in RS and sulfur-reducing bacteria with methanogens seems to be in the potential syntrophic association in DS. These interactions could be ultimately responsible for carrying out amino-acid degradation, aromatic compound degradation and degradation of propionate and butyrate in DS. Our data also reveal the presence of key genes in the sludge microbial community responsible for degradation of polycyclic aromatic hydrocarbons. Potential pathogenic microbes and genes for the virulence factors were found to be relatively abundant in RS which clearly reflect the necessity of treatment of RS. After treatment, potential pathogens load was reduced, indicating the sludge hygienisation in DS. Additionally, the interactions found in this study would reveal the biological and environmental cooperation among microbial communities for domestic wastewater treatment.

摘要

污水废物代表了一个由复杂且相互作用的微生物群落组成的生态系统,这些微生物群落根据其各自的遗传和代谢潜力以不同的动力学方式增殖。我们在离子激流平台上进行了宏基因组鸟枪法测序,以探索污水处理厂预处理/原污泥(RS)和后处理/干污泥(DS)的微生物群落结构、它们的生物相互作用以及相关的功能能力。属于(约45.80%)的细菌系统型在RS中占主导地位,古菌相对较少(约1.94%),而DS中(30.23%)和(13.38%)类的占主导地位,(约7.18%)的丰度相对较高。特别是,在RS中似乎是主要能量来源,而在DS中,产甲烷菌与硫酸盐还原菌似乎处于潜在的互营共生关系。这些相互作用最终可能负责在DS中进行氨基酸降解、芳香化合物降解以及丙酸盐和丁酸盐的降解。我们的数据还揭示了污泥微生物群落中存在负责多环芳烃降解的关键基因。在RS中发现潜在致病微生物和毒力因子基因相对丰富,这清楚地反映了对RS进行处理的必要性。处理后,潜在病原体负荷降低,表明DS中的污泥达到了卫生标准。此外,本研究中发现的相互作用将揭示微生物群落之间在生活污水处理方面的生物和环境协同作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/209b/5515832/3489e1e2a726/fmicb-08-01382-g001.jpg

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